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Haplotype and diplotype analyses of variation in ERCC5 transcription cis-regulation in normal bronchial epithelial cells

机译:正常支气管上皮细胞ERCC5转录顺式调控变异的单倍型和双倍型分析

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Excision repair cross-complementation group 5 (ERCC5) gene plays an important role in nucleotide excision repair, and dysregulation of ERCC5 is associated with increased lung cancer risk. Haplotype and diplotype analyses were conducted in normal bronchial epithelial cells (NBEC) to better understand mechanisms responsible for interindividual variation in transcript abundance regulation of ERCC5. We determined genotypes at putative ERCC5 cis-regulatory SNPs (cis-rSNP) rs751402 and rs2296147, and marker SNPs rs1047768 and rs17655. ERCC5 allele-specific transcript abundance was assessed by a recently developed targeted sequencing method. Syntenic relationships among alleles at rs751402, rs2296147, and rs1047768 were assessed by allele-specific PCR followed by Sanger sequencing. We then assessed association of ERCC5 allele-specific expression at rs1047768 with haplotype and diplotype structure at cis-rSNPs rs751402 and rs2296147. Genotype analysis revealed significantly (P < 0.005) higher interindividual variation in allelic ratios in cDNA samples relative to matched gDNA samples at both rs1047768 and rs17655. By diplotype analysis, mean expression was higher at the rs1047768 alleles syntenic with rs2296147 T allele compared with rs2296147 C allele. Furthermore, mean expression was lower at rs17655 C allele, which is syntenic with G allele at a linked SNP rs873601 (D' = 0.95). These data support the conclusions that in NBEC, T allele at SNP rs2296147 upregulates ERCC5, variation at rs751402 does not alter ERCC5 regulation, and that C allele at SNP rs17655 downregulates ERCC5. Variation in ERCC5 transcript abundance associated with allelic variation at these SNPs could result in variation in NER function in NBEC and lung cancer risk.
机译:切除修复交叉互补组5(ERCC5)基因在核苷酸切除修复中起重要作用,而ERCC5失调与肺癌风险增加相关。在正常支气管上皮细胞(NBEC)中进行了单倍型和双倍型分析,以更好地了解负责ERCC5转录本丰度调节的个体差异的机制。我们确定了推定的ERCC5顺式调节SNP(cis-rSNP)rs751402和rs2296147的基因型,以及标记SNP rs1047768和rs17655的基因型。 ERCC5等位基因特异性转录本丰度通过最近开发的靶向测序方法进行了评估。 rs751402,rs2296147和rs1047768等位基因之间的等位关系通过等位基因特异性PCR和Sanger测序进行评估。然后,我们评估了rs1047768处ERCC5等位基因特异性表达与cis-rSNP rs751402和rs2296147处的单倍型和双倍型结构的关联。基因型分析显示,相对于匹配的gDNA样品,在rs1047768和rs17655上,cDNA样品中的等位基因比率的个体间差异显着(P <0.005)。通过双型分析,与rs2296147 C等位基因相比,在rs1047768等位基因与rs2296147 T等位基因同位的平均表达更高。此外,在rs17655 C等位基因处的平均表达较低,这在连接的SNP rs873601处与G等位基因同义(D'= 0.95)。这些数据支持以下结论:在NBEC中,SNP rs2296147处的T等位基因上调ERCC5,rs751402处的变异不改变ERCC5调节,SNP rs17655处的C等位基因下调ERCC5。与这些SNP处的等位基因变异相关的ERCC5转录物丰度变异可能导致NBEC的NER功能变异和患肺癌的风险。

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